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Single-stage gradient-based stellarator coil design: Optimization for near-axis quasi-symmetry

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arxiv 2010.02033 v2 pith:TN7G5C7X submitted 2020-10-01 physics.plasm-ph cs.NAmath.NAmath.OCphysics.comp-ph

classification physics.plasm-phcs.NAmath.NAmath.OCphysics.comp-ph
keywords findmagneticapproachcoilcoilsconfinementconfigurationdesign
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We present a new coil design paradigm for magnetic confinement in stellarators. Our approach directly optimizes coil shapes and coil currents to produce a vacuum quasi-symmetric magnetic field with a target rotational transform on the magnetic axis. This approach differs from the traditional two-stage approach in which first a magnetic configuration with desirable physics properties is found, and then coils to approximately realize this magnetic configuration are designed. The proposed single-stage approach allows us to find a compromise between confinement and engineering requirements, i.e., find easy-to-build coils with good confinement properties. Using forward and adjoint sensitivities, we derive derivatives of the physical quantities in the objective, which is constrained by a nonlinear periodic differential equation. In two numerical examples, we compare different gradient-based descent algorithms and find that incorporating approximate second-order derivative information through a quasi-Newton method is crucial for convergence. We also explore the optimization landscape in the neighborhood of a minimizer and find many directions in which the objective is mostly flat, indicating ample freedom to find simple and thus easy-to-build coils.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Surface Current Optimization and Coil-Cutting Algorithms for Stage-Two Stellarator Optimization

    physics.plasm-ph 2025-08 conditional novelty 5.0 of 10

    Explicit derivations and a documented, DESC-implemented algorithm for optimizing a surface current on a toroidal surface and cutting it into modular or helical stellarator coils.

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